Paul Davis
30b087ab3d
Generated by tools/f2s. Some hand-editing will be required in a few places to fix up comments related to timecode and video in order to keep the legible
522 lines
15 KiB
C++
522 lines
15 KiB
C++
/*
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Copyright (C) 2004
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 2 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to the Free Software
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Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
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*/
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#ifndef COMPILER_MSVC
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#include <stdbool.h>
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#endif
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#include <cstdio>
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#include "ardour/audioengine.h"
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#include "ardour/debug.h"
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#include "ardour/session.h"
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#include "ardour/tempo.h"
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#include "ardour/plugin_insert.h"
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#include "ardour/windows_vst_plugin.h"
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#include "ardour/vestige/aeffectx.h"
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#include "ardour/vst_types.h"
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#ifdef WINDOWS_VST_SUPPORT
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#include <fst.h>
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#endif
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#include "pbd/i18n.h"
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using namespace ARDOUR;
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#define SHOW_CALLBACK(MSG) DEBUG_TRACE (PBD::DEBUG::VSTCallbacks, string_compose (MSG " val = %1 idx = %2\n", index, value))
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int Session::vst_current_loading_id = 0;
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const char* Session::vst_can_do_strings[] = {
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X_("supplyIdle"),
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X_("sendVstTimeInfo"),
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X_("sendVstEvents"),
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X_("sendVstMidiEvent"),
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X_("receiveVstEvents"),
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X_("receiveVstMidiEvent"),
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X_("supportShell"),
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X_("shellCategory"),
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X_("shellCategorycurID")
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};
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const int Session::vst_can_do_string_count = sizeof (vst_can_do_strings) / sizeof (char*);
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intptr_t Session::vst_callback (
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AEffect* effect,
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int32_t opcode,
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int32_t index,
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intptr_t value,
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void* ptr,
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float opt
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)
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{
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VSTPlugin* plug;
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Session* session;
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static VstTimeInfo _timeinfo; // only uses as fallback
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VstTimeInfo* timeinfo;
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int32_t newflags = 0;
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if (effect && effect->ptr1) {
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plug = (VSTPlugin *) (effect->ptr1);
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session = &plug->session();
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timeinfo = plug->timeinfo ();
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DEBUG_TRACE (PBD::DEBUG::VSTCallbacks, string_compose ("am callback 0x%1%2, opcode = %3%4, plugin = \"%5\"\n",
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std::hex, (void*) DEBUG_THREAD_SELF,
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std::dec, opcode, plug->name()));
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} else {
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plug = 0;
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session = 0;
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timeinfo = &_timeinfo;
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DEBUG_TRACE (PBD::DEBUG::VSTCallbacks, string_compose ("am callback 0x%1%2, opcode = %3%4\n",
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std::hex, (void*) DEBUG_THREAD_SELF,
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std::dec, opcode));
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}
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switch(opcode){
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case audioMasterAutomate:
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SHOW_CALLBACK ("audioMasterAutomate");
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// index, value, returns 0
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if (plug) {
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plug->parameter_changed_externally (index, opt);
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}
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return 0;
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case audioMasterVersion:
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SHOW_CALLBACK ("audioMasterVersion");
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// vst version, currently 2 (0 for older)
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return 2400;
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case audioMasterCurrentId:
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SHOW_CALLBACK ("audioMasterCurrentId");
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// returns the unique id of a plug that's currently loading
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return vst_current_loading_id;
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case audioMasterIdle:
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SHOW_CALLBACK ("audioMasterIdle");
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#ifdef WINDOWS_VST_SUPPORT
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fst_audio_master_idle();
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#endif
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if (effect) {
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effect->dispatcher(effect, effEditIdle, 0, 0, NULL, 0.0f);
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}
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return 0;
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case audioMasterPinConnected:
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SHOW_CALLBACK ("audioMasterPinConnected");
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// inquire if an input or output is beeing connected;
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// index enumerates input or output counting from zero:
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// value is 0 for input and != 0 otherwise. note: the
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// return value is 0 for <true> such that older versions
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// will always return true.
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if (!plug) {
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// we don't know.
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// but ardour always connects all buffers, so we're good
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return 0;
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}
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switch (value) {
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case 0:
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if (plug->plugin_insert ()) {
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bool valid;
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const ChanMapping& map (plug->plugin_insert ()->input_map (plug->plugin_number ()));
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map.get (DataType::AUDIO, index, &valid);
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return valid ? 0 : 1;
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}
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if (index < plug->plugin()->numInputs) {
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return 0;
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}
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break;
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case 1:
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#if 0 // investigate, the outputs *are* connected to scratch buffers
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if (plug->plugin_insert ()) {
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bool valid;
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const ChanMapping& map (plug->plugin_insert ()->output_map (plug->plugin_number ()));
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map.get (DataType::AUDIO, index, &valid);
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return valid ? 0 : 1;
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}
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#endif
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if (index < plug->plugin()->numOutputs) {
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return 0;
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}
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break;
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default:
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break;
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}
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return 1;
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case audioMasterWantMidi:
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SHOW_CALLBACK ("audioMasterWantMidi");
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// <value> is a filter which is currently ignored
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if (plug && plug->get_info() != NULL) {
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plug->get_info()->n_inputs.set_midi (1);
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}
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return 0;
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case audioMasterGetTime:
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SHOW_CALLBACK ("audioMasterGetTime");
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newflags = kVstNanosValid | kVstAutomationWriting | kVstAutomationReading;
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timeinfo->nanoSeconds = g_get_monotonic_time () * 1000;
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if (plug && session) {
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samplepos_t now = plug->transport_sample();
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timeinfo->samplePos = now;
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timeinfo->sampleRate = session->sample_rate();
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if (value & (kVstTempoValid)) {
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const Tempo& t (session->tempo_map().tempo_at_sample (now));
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timeinfo->tempo = t.quarter_notes_per_minute ();
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newflags |= (kVstTempoValid);
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}
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if (value & (kVstTimeSigValid)) {
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const MeterSection& ms (session->tempo_map().meter_section_at_sample (now));
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timeinfo->timeSigNumerator = ms.divisions_per_bar ();
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timeinfo->timeSigDenominator = ms.note_divisor ();
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newflags |= (kVstTimeSigValid);
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}
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if ((value & (kVstPpqPosValid)) || (value & (kVstBarsValid))) {
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Timecode::BBT_Time bbt;
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try {
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bbt = session->tempo_map().bbt_at_sample_rt (now);
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bbt.beats = 1;
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bbt.ticks = 0;
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/* exact quarter note */
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double ppqBar = session->tempo_map().quarter_note_at_bbt_rt (bbt);
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/* quarter note at sample position (not rounded to note subdivision) */
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double ppqPos = session->tempo_map().quarter_note_at_sample_rt (now);
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if (value & (kVstPpqPosValid)) {
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timeinfo->ppqPos = ppqPos;
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newflags |= kVstPpqPosValid;
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}
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if (value & (kVstBarsValid)) {
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timeinfo->barStartPos = ppqBar;
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newflags |= kVstBarsValid;
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}
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} catch (...) {
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/* relax */
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}
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}
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if (value & (kVstSmpteValid)) {
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Timecode::Time t;
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session->timecode_time (now, t);
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timeinfo->smpteOffset = (t.hours * t.rate * 60.0 * 60.0) +
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(t.minutes * t.rate * 60.0) +
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(t.seconds * t.rate) +
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(t.frames) +
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(t.subframes);
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timeinfo->smpteOffset *= 80.0; /* VST spec is 1/80th samples */
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if (session->timecode_drop_frames()) {
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if (session->timecode_frames_per_second() == 30.0) {
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timeinfo->smpteFrameRate = 5;
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} else {
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timeinfo->smpteFrameRate = 4; /* 29.97 assumed, thanks VST */
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}
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} else {
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if (session->timecode_frames_per_second() == 24.0) {
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timeinfo->smpteFrameRate = 0;
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} else if (session->timecode_frames_per_second() == 24.975) {
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timeinfo->smpteFrameRate = 2;
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} else if (session->timecode_frames_per_second() == 25.0) {
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timeinfo->smpteFrameRate = 1;
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} else {
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timeinfo->smpteFrameRate = 3; /* 30 fps */
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}
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}
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newflags |= (kVstSmpteValid);
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}
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if (session->actively_recording ()) {
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newflags |= kVstTransportRecording;
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}
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if (plug->transport_speed () != 0.0f) {
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newflags |= kVstTransportPlaying;
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}
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if (session->get_play_loop ()) {
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newflags |= kVstTransportCycleActive;
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Location * looploc = session->locations ()->auto_loop_location ();
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if (looploc) try {
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timeinfo->cycleStartPos = session->tempo_map ().quarter_note_at_sample_rt (looploc->start ());
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timeinfo->cycleEndPos = session->tempo_map ().quarter_note_at_sample_rt (looploc->end ());
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newflags |= kVstCyclePosValid;
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} catch (...) { }
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}
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} else {
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timeinfo->samplePos = 0;
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timeinfo->sampleRate = AudioEngine::instance()->sample_rate();
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}
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if ((timeinfo->flags & (kVstTransportPlaying | kVstTransportRecording | kVstTransportCycleActive))
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!=
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(newflags & (kVstTransportPlaying | kVstTransportRecording | kVstTransportCycleActive)))
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{
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newflags |= kVstTransportChanged;
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}
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timeinfo->flags = newflags;
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return (intptr_t) timeinfo;
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case audioMasterProcessEvents:
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SHOW_CALLBACK ("audioMasterProcessEvents");
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// VstEvents* in <ptr>
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if (plug && plug->midi_buffer()) {
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VstEvents* v = (VstEvents*)ptr;
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for (int n = 0 ; n < v->numEvents; ++n) {
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VstMidiEvent *vme = (VstMidiEvent*) (v->events[n]->dump);
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if (vme->type == kVstMidiType) {
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plug->midi_buffer()->push_back(vme->deltaSamples, 3, (uint8_t*)vme->midiData);
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}
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}
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}
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return 0;
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case audioMasterSetTime:
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SHOW_CALLBACK ("audioMasterSetTime");
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// VstTimenfo* in <ptr>, filter in <value>, not supported
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case audioMasterTempoAt:
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SHOW_CALLBACK ("audioMasterTempoAt");
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// returns tempo (in bpm * 10000) at sample sample location passed in <value>
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if (session) {
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const Tempo& t (session->tempo_map().tempo_at_sample (value));
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return t.quarter_notes_per_minute() * 1000;
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} else {
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return 0;
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}
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break;
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case audioMasterGetNumAutomatableParameters:
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SHOW_CALLBACK ("audioMasterGetNumAutomatableParameters");
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return 0;
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case audioMasterGetParameterQuantization:
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SHOW_CALLBACK ("audioMasterGetParameterQuantization");
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// returns the integer value for +1.0 representation,
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// or 1 if full single float precision is maintained
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// in automation. parameter index in <value> (-1: all, any)
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return 0;
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case audioMasterIOChanged:
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SHOW_CALLBACK ("audioMasterIOChanged");
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// numInputs and/or numOutputs has changed
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return 0;
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case audioMasterNeedIdle:
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SHOW_CALLBACK ("audioMasterNeedIdle");
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// plug needs idle calls (outside its editor window)
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if (plug) {
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plug->state()->wantIdle = 1;
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}
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return 0;
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case audioMasterSizeWindow:
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SHOW_CALLBACK ("audioMasterSizeWindow");
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if (plug && plug->state()) {
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if (plug->state()->width != index || plug->state()->height != value) {
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plug->state()->width = index;
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plug->state()->height = value;
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#ifndef NDEBUG
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printf ("audioMasterSizeWindow %d %d\n", plug->state()->width, plug->state()->height);
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#endif
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plug->VSTSizeWindow (); /* EMIT SIGNAL */
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}
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}
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return 0;
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case audioMasterGetSampleRate:
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SHOW_CALLBACK ("audioMasterGetSampleRate");
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if (session) {
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return session->sample_rate();
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}
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return 0;
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case audioMasterGetBlockSize:
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SHOW_CALLBACK ("audioMasterGetBlockSize");
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if (session) {
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return session->get_block_size();
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}
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return 0;
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case audioMasterGetInputLatency:
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SHOW_CALLBACK ("audioMasterGetInputLatency");
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return 0;
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case audioMasterGetOutputLatency:
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SHOW_CALLBACK ("audioMasterGetOutputLatency");
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return 0;
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case audioMasterGetPreviousPlug:
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SHOW_CALLBACK ("audioMasterGetPreviousPlug");
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// input pin in <value> (-1: first to come), returns cEffect*
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return 0;
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case audioMasterGetNextPlug:
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SHOW_CALLBACK ("audioMasterGetNextPlug");
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// output pin in <value> (-1: first to come), returns cEffect*
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case audioMasterWillReplaceOrAccumulate:
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SHOW_CALLBACK ("audioMasterWillReplaceOrAccumulate");
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// returns: 0: not supported, 1: replace, 2: accumulate
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return 0;
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case audioMasterGetCurrentProcessLevel:
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SHOW_CALLBACK ("audioMasterGetCurrentProcessLevel");
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// returns: 0: not supported,
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// 1: currently in user thread (gui)
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// 2: currently in audio thread (where process is called)
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// 3: currently in 'sequencer' thread (midi, timer etc)
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// 4: currently offline processing and thus in user thread
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// other: not defined, but probably pre-empting user thread.
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return 0;
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case audioMasterGetAutomationState:
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SHOW_CALLBACK ("audioMasterGetAutomationState");
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// returns 0: not supported, 1: off, 2:read, 3:write, 4:read/write
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// offline
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return 0;
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case audioMasterOfflineStart:
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SHOW_CALLBACK ("audioMasterOfflineStart");
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return 0;
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case audioMasterOfflineRead:
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SHOW_CALLBACK ("audioMasterOfflineRead");
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// ptr points to offline structure, see below. return 0: error, 1 ok
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return 0;
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case audioMasterOfflineWrite:
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SHOW_CALLBACK ("audioMasterOfflineWrite");
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// same as read
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return 0;
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case audioMasterOfflineGetCurrentPass:
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SHOW_CALLBACK ("audioMasterOfflineGetCurrentPass");
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return 0;
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case audioMasterOfflineGetCurrentMetaPass:
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SHOW_CALLBACK ("audioMasterOfflineGetCurrentMetaPass");
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return 0;
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case audioMasterSetOutputSampleRate:
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SHOW_CALLBACK ("audioMasterSetOutputSampleRate");
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// for variable i/o, sample rate in <opt>
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return 0;
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case audioMasterGetSpeakerArrangement:
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SHOW_CALLBACK ("audioMasterGetSpeakerArrangement");
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// (long)input in <value>, output in <ptr>
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return 0;
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case audioMasterGetVendorString:
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SHOW_CALLBACK ("audioMasterGetVendorString");
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// fills <ptr> with a string identifying the vendor (max 64 char)
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strcpy ((char*) ptr, "Linux Audio Systems");
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return 0;
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case audioMasterGetProductString:
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SHOW_CALLBACK ("audioMasterGetProductString");
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// fills <ptr> with a string with product name (max 64 char)
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strcpy ((char*) ptr, PROGRAM_NAME);
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return 1;
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case audioMasterGetVendorVersion:
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SHOW_CALLBACK ("audioMasterGetVendorVersion");
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// returns vendor-specific version
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return 900;
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case audioMasterVendorSpecific:
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SHOW_CALLBACK ("audioMasterVendorSpecific");
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// no definition, vendor specific handling
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return 0;
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case audioMasterSetIcon:
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SHOW_CALLBACK ("audioMasterSetIcon");
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// void* in <ptr>, format not defined yet
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return 0;
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case audioMasterCanDo:
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SHOW_CALLBACK ("audioMasterCanDo");
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// string in ptr, (const char*)ptr
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for (int i = 0; i < vst_can_do_string_count; i++) {
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if (! strcmp(vst_can_do_strings[i], (const char*)ptr)) {
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return 1;
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}
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}
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return 0;
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case audioMasterGetLanguage:
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SHOW_CALLBACK ("audioMasterGetLanguage");
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// see enum
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return 0;
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case audioMasterOpenWindow:
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SHOW_CALLBACK ("audioMasterOpenWindow");
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// returns platform specific ptr
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return 0;
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case audioMasterCloseWindow:
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SHOW_CALLBACK ("audioMasterCloseWindow");
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// close window, platform specific handle in <ptr>
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return 0;
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case audioMasterGetDirectory:
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SHOW_CALLBACK ("audioMasterGetDirectory");
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// get plug directory, FSSpec on MAC, else char*
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return 0;
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case audioMasterUpdateDisplay:
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SHOW_CALLBACK ("audioMasterUpdateDisplay");
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// something has changed, update 'multi-fx' display
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if (effect) {
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effect->dispatcher(effect, effEditIdle, 0, 0, NULL, 0.0f);
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}
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return 0;
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case audioMasterBeginEdit:
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SHOW_CALLBACK ("audioMasterBeginEdit");
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// begin of automation session (when mouse down), parameter index in <index>
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return 0;
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case audioMasterEndEdit:
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SHOW_CALLBACK ("audioMasterEndEdit");
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// end of automation session (when mouse up), parameter index in <index>
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return 0;
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case audioMasterOpenFileSelector:
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SHOW_CALLBACK ("audioMasterOpenFileSelector");
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// open a fileselector window with VstFileSelect* in <ptr>
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return 0;
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default:
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DEBUG_TRACE (PBD::DEBUG::VSTCallbacks, string_compose ("VST master dispatcher: undefed: %1\n", opcode));
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break;
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}
|
|
|
|
return 0;
|
|
}
|